Productivity of solid and intercropped soybean with corn under low irrigation water levels

Hamed Barakat
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Abstract

A three-year study was carried out at Giza Agricultural Experiments and Research Station, Faculty of Agriculture, Cairo University, Giza, Egypt during the summer seasons of 2018, 2019, and 2020 to evaluate the effect of low irrigation water levels on the productivity of corn and soybean under different solid and intercropping systems. This study included 18 treatments. Three levels of irrigation water (7140, 5712, and 4284 m 3 /ha) were expressed as 100 "I Sa ", 80 "I Sb " and 60%"I Sc ", respectively. Six cropping systems that included alternating ridges 2:2 (A a ), mixed (B b ), solid corn ridges (Soc a ), solid corn beds (Soc b ), solid soybean ridges (Sos a ), and solid soybean beds (Sos b ). Corn cultivar S.C.132 (white grains) and soybean cultivar Giza 111 were used in this study. A split plot design in randomized complete blocks arrangement with three replications was used. All soybean and corn traits were negatively affected when received I Sc . However, there were no significant differences between I Sa and I Sb for all soybean traits in all seasons. A significantly higher seed yield per hectare for soybean was recorded for solid plantings than for intercropping systems. Intercropping system Bb had high kernel weight and grain yield per hectare. Irrigation water use efficiency (IWUE) was increased by decreasing the applied irrigation water level from 7140 to 4284 m3/ha. The intercropping system Bb recorded high values of IWUE. Land equivalent ratio (LER) was not significantly affected by applied irrigation water levels, while intercropping system Bb recorded high LER in all seasons. Most interactions were significant throughout the seasons of the study. It can be concluded that intercropped soybean cultivar Giza 111 with corn in raised beds that received irrigation water of 5712 m3/ha recorded higher productivity values (IWUE and LER), as well as total and net returns, than the other treatments.
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低灌溉水位下大豆玉米间作产量的研究
在埃及吉萨开罗大学农业学院吉萨农业试验研究站,于2018年、2019年和2020年夏季开展了一项为期三年的研究,以评估不同固作和间作制度下低灌溉水位对玉米和大豆生产力的影响。本研究包括18个治疗。灌溉水(7140、5712和4284 m3 /ha)分别表示为100“I Sa”、80“I Sb”和60%“I Sc”。6种种植制度包括:2:2交替垄沟(A A)、混合垄沟(B B)、固体玉米垄沟(Soc A)、固体玉米垄沟(Soc B)、固体大豆垄沟(Sos A)和固体大豆垄沟(Sos B)。玉米品种S.C.132以大豆品种吉萨111为研究对象。采用完全随机区组的分割区设计,共3个重复。大豆和玉米的所有性状均受I - Sc的影响。在大豆的所有性状中,不同季节的易损性和易损性差异不显著。据记录,单作大豆每公顷种子产量明显高于间作。套作制度Bb具有较高的粒重和亩产。灌溉水利用效率从7140 m3/ha降低到4284 m3/ha,灌溉水利用效率得到提高。套作系统Bb的IWUE值较高。土壤等效比(LER)受施用灌溉水位的影响不显著,套作系统Bb的土地等效比在所有季节均较高。在整个研究季节中,大多数相互作用都很重要。综上所述,灌溉水量为5712 m3/ha的垄作大豆吉扎111的生产力值(IWUE和LER)、总收益和净收益均高于其他处理。
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